EP2281393B1 - Halteinrichtung für kameramodule - Google Patents

Halteinrichtung für kameramodule Download PDF

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Publication number
EP2281393B1
EP2281393B1 EP08778379.1A EP08778379A EP2281393B1 EP 2281393 B1 EP2281393 B1 EP 2281393B1 EP 08778379 A EP08778379 A EP 08778379A EP 2281393 B1 EP2281393 B1 EP 2281393B1
Authority
EP
European Patent Office
Prior art keywords
support unit
pan
spin
unit
worm
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Not-in-force
Application number
EP08778379.1A
Other languages
English (en)
French (fr)
Other versions
EP2281393A4 (de
EP2281393A1 (de
Inventor
Young-Soo Lee
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
C-pro Electronics Co Ltd
C PRO ELECTRONICS CO Ltd
Original Assignee
C-pro Electronics Co Ltd
C PRO ELECTRONICS CO Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by C-pro Electronics Co Ltd, C PRO ELECTRONICS CO Ltd filed Critical C-pro Electronics Co Ltd
Publication of EP2281393A1 publication Critical patent/EP2281393A1/de
Publication of EP2281393A4 publication Critical patent/EP2281393A4/de
Application granted granted Critical
Publication of EP2281393B1 publication Critical patent/EP2281393B1/de
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N7/00Television systems
    • H04N7/18Closed-circuit television [CCTV] systems, i.e. systems in which the video signal is not broadcast
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/50Constructional details

Definitions

  • the present invention relates, in general, to a support device for camera modules. More particularly, the present invention relates to a support device for camera modules, which is capable of panning or spinning a camera module without separating an outer casing that surrounds the camera module.
  • FIG. 1 is a view illustrating a conventional support device for camera modules.
  • the support device for camera modules includes a base support frame, a middle support part, a lower support part, and an upper support part. These will be described below in detail.
  • Support bosses 11 and 12 are provided on both sides on the top of the base support frame 10, so that rotary bosses 21 and 22, provided on the outer surface of a first support part 20, are rotatably coupled to the support bosses 11 and 12.
  • the first support part 20 is installed in the base support frame 10 in such a way as to rotate in a vertical direction.
  • Bosses 31 and 32, provided on the outer surface of a second support part 30, are coupled to corresponding rotary bosses 23 and 24 provided on both sides of the first support part 20, so that the second support part 30 is placed in a space defined in the first support part 20.
  • the second support part 30 is coupled to the first support part 20 to be rotated perpendicularly relative to the first support part 20.
  • a camera module is mounted on the upper surface of the second support part 30, so that it is possible to adjust the position of the camera module 40.
  • the conventional support device for camera modules is advantageous in that the first and second support parts 20 and 30 are rotated vertically, so that the position of the camera module 40 can be adjusted.
  • the conventional support device is problematic in that the camera module 40, mounted on the upper portion of the second support part 30, cannot be rotated in a horizontal direction, so that the installation of the camera module 40 is limited to a specific position.
  • the top and bottom of the camera module are fixed.
  • the camera module may be laid at 90 degrees. In this case, the image displayed on a screen is rotated 90 degrees.
  • the support device is problematic in that it is impossible to adjust the horizontal rotating angle of the camera module.
  • FIG. 2 is a view illustrating a support device for camera modules, which is disclosed in Korean Patent No. 10-0596624 .
  • the support device allows a camera module to be rotated in a horizontal direction, so that the camera module can be freely installed at various angles.
  • the support device is problematic in that it must be dismantled when a user desires to adjust the angle of the camera module horizontally and vertically, thus inconveniencing the user. Further, the support device is problematic in that it is impossible to adjust the angle of the camera module from the exterior, even at the time of installation.
  • the support device in order to adjust the angle of the camera module after the assembly of the support device for camera modules has been completed, the support device must be dismantled again, so that it is complicated to adjust the angle of the camera module. Therefore, a long work period is required and work efficiency is reduced.
  • EP-A-1760387 discloses a support assembly for a camera comprising a base having an inner annular ring, an outer ring assembly movably attached to said inner ring, and at least one motor mounting bracket having a camera support flange movably attached thereto, said motor mounting bracket being attached to said outer ring assembly without the use of any separate hardware fastener.
  • US-A-2007/041726 discloses a security camera including a case body mounted on a fixed wall.
  • a top plate is rotatably installed at one side of the case body.
  • a movable circuit board is installed at one side of the top plate.
  • a fixed circuit board is fixed in the case body.
  • a camera unit is installed at the other side of the top plate.
  • a coupling cable connects the movable circuit board and the fixed circuit board.
  • a slip ring supports the coupling cable without being influenced by rotation of the top plate.
  • a wire guide substantially prevents movement of the coupling cable drawn from an upper side of the top plate.
  • a wire guide includes a wire drawing section through which the coupling cable passes.
  • Fixing ribs are provided at one side of the wire guide to fix the coupling cable drawn through the wire drawing section to the upper surface of the top plate. The fixing ribs are installed at a certain interval to fix a core inserted around the coupling cable.
  • WO-A-2008/017857 discloses surveillance apparatus comprising a transparent dome with one or two infrared video cameras mounted on a tilt mounting inside the dome and pulsed LED illuminators on the same tilt mounting outside the dome, the dome itself being on a pan rotational mounting.
  • WO-A-2007/059218 discloses a system for a video surveillance including a video camera assembly including a base, a first pan/tilt mechanism, and a second pan/tilt mechanism.
  • the first pan/tilt mechanism is removably coupled to the base.
  • the second pan/tilt mechanism is configured to be coupled to the base in replacement of the first pan/tilt mechanism.
  • the system also includes a memory configured to store pan/tilt mechanism positional calibration information, and a controller communicatively coupled to the first pan/tilt mechanism configured to receive positional calibration information for the first pan/tilt mechanism, store the positional calibration information to the memory, retrieve the positional calibration information from the memory when the first pan/tilt mechanism is removed and replaced with the second pan/tilt mechanism, and download the retrieved positional calibration information for use by the second pan/tilt mechanism.
  • KR 20080011962 A discloses a dome-type camera apparatus.
  • an object of the present invention is to provide a support device for camera modules, which is capable of rotating a camera module without separating an outer casing that surrounds the camera module so as to rotate the camera module.
  • the present invention provides a support device for camera modules, including a body which has a camera module therein, a second middle support unit which is rotatably fitted to a side surface of the body and has on an outer surface of the second middle support unit two opposing wheels to be fitted into coupling bosses of a rotary support unit, a rear cover which is coupled to the second middle support unit and has on an inner surface thereof a seating step so that the body is rotatably seated thereon, and the rotary support unit which has the two coupling bosses to support the two wheels of the second middle support unit.
  • a support device for camera modules allows a camera module to be easily rotated without separating an outer casing that surrounds the camera module so as to rotate the camera module in a desired direction, so that work efficiency for rotating the camera module is improved.
  • the support device for camera modules according to the present invention is more useful.
  • FIG. 3 is an exploded perspective view illustrating a support device for camera modules according to an embodiment of the present invention.
  • the support device includes a rotary support unit 700, and a rotary unit which includes a camera module 1000 and is coupled to the rotary support unit 700.
  • the support device includes a body having a camera module therein, a pan-tilt support unit 1200, a rear cover 800, and the rotary support unit 700.
  • the pan-tilt support unit 1200 is rotatably fitted to the side surface of the body, and has two wheels which are provided on opposite sides of the outer surface of the pan-tilt support unit 1200 to be connected to coupling bosses of the rotary support unit 700.
  • the rear cover 800 is coupled to the pan-tilt support unit 1200, with a seating step provided on the inner surface of the rear cover 800 such that the body is rotatably seated on the seating step.
  • the rotary support unit 700 includes the two coupling bosses, to which the wheels of the pan-tilt support unit 1200 are coupled.
  • the body is coupled with the camera module 1000, and includes a lower support unit 900, which is seated on the seating step, a middle support unit 1100, which is coupled to the lower support unit 900, and a spin-rotation support unit (upper support unit) 1300, which is coupled to the middle support unit 1100.
  • the pan-tilt support unit (second middle support unit) 1200 is rotatably fitted to the lower portion of the spin-rotation support unit 1300 in such a way as to be positioned between the spin-rotation support unit 1300 and the middle support unit 1100.
  • the rotary support unit 700 has the shape of a ring which has a hollow portion therein.
  • the coupling bosses 720 and 750 for the pan-tilt support unit 1200 protrude upwards from the upper surface of the rotary support unit 700 in such a way as to be opposite each other.
  • a plurality of dome locking holes 710 is formed in the upper surface of the rotary support unit 700.
  • a worm wheel 1210 and a locking wheel 1240 of the pan-tilt support unit 1200 are individually inserted into the upper portions of the corresponding coupling bosses 720 and 750 for the pan-tilt support unit 1200.
  • Pan-worm fitting parts 740 protrude upwards and downwards at a predetermined position on the upper portion of the pantilt-support unit coupling boss 720, to which the worm wheel 1210 is coupled, so that a pan worm 1600 is fitted into the pan-worm fitting parts 740.
  • a groove 730 is defined between the pan worm fitting parts 740, and the pan worm 1600 is held in the groove 730 in such a way that a screw part of the pan worm 1600 is exposed to the outside.
  • the pan worm 1600 is coupled to the worm wheel 1210, thus providing a worm gear.
  • the rotary unit includes the rear cover 800, the pan-tilt support unit 1200, the spin-rotation support unit 1300, the middle support unit 1100, and the lower support unit 900.
  • the rear cover 800 has the shape of a dome which is hollow therein.
  • the pan-tilt support unit 1200 is coupled to the rear cover 800.
  • the lower portion of the spin-rotation support unit 1300 is inserted into the pan-tilt support unit 1200.
  • the middle support unit 1100 is positioned under the pan-tilt support unit 1200, and is coupled to the spin-rotation support unit 1300.
  • the lower support unit 900 is coupled to the camera module 1000 and the middle support unit 1100, and the lower portion of the lower support unit 900 is seated on the seating step in the rear cover 800.
  • the rear cover 800 has the shape of a dome which is hollow therein.
  • a cut part 810 is formed in the spherical surface of the rear cover 800, and coupling rods 820 are provided around the circular opening of the rear cover 800 in such a way as to protrude upwards, with locking holes formed in the coupling rods 820.
  • the inner edge of the circular opening of the rear cover 800 is concavely depressed, thus providing the seating step 840.
  • a lower disk 930 of the lower support unit 900 is seated on the seating step 840 so that the lower support unit 900 spins along the seating step 840.
  • the lower support unit 900 has on a lower portion thereof the annular lower disk 930 having a hollow portion therein.
  • Locking holes 910 are formed in the outer portion of the lower disk 930 such that fastening screws or fastening bolts are tightened into the locking holes 910.
  • the upper portion of the lower support unit 900 includes a square pillar having a hollow portion therein.
  • Module locking holes 920 are formed in the corners of the upper end of the square pillar, so that fastening screws for fastening the camera module to the lower support unit 900 are tightened into the module locking holes 920.
  • the middle support unit 1100 has the shape of a ring which has a hollow portion therein, and locking protrusions 1110, each having a locking hole, are provided on the inner circumference of the middle support unit 1110 to correspond to the locking holes 910 in the lower support unit 900.
  • the pan-tilt support unit (second middle support unit) 1200 has the shape of a ring which has a hollow portion therein.
  • Locking protrusions 1220 are provided on the outer circumference of the pan-tilt support unit 1200 to correspond to the coupling rods 820 of the rear cover 800.
  • the worm wheel 1210 and the locking wheel 1240 are separately provided on the pan-tilt support unit 1200 at positions corresponding to the pan-tilt-support unit coupling bosses 720 and 750 of the rotary support unit 700, and a spin-gear support 1250 protrudes from the outer circumference of the pan-tilt-support unit 700 so that a spin gear 1500 is coupled to the spin-gear support 1250.
  • the central portion of the spin-gear support 1250 is bored through to form an inner through hole, and part of the outer circumference of the spin-gear support 1250 is cut vertically to form a slit.
  • the slit is narrower than the inner through hole.
  • a throat 1520 of the spin gear 1500 is fitted through the slit into the spin-gear support 1250.
  • the spin-rotation support unit (upper support unit) 1300 has the shape of a ring which has a hollow portion therein.
  • a stepper 1320 is provided on the outer circumference of the upper portion of the spin-rotation support unit 1300, and comprises a toothed wheel which is meshed with the spin gear 1500 to form a spin spur gear.
  • the outer circumference of the lower portion of the spin-rotation support unit 1300 which has a smaller diameter than the outer circumference of the upper portion thereof, is in close contact with the inner circumference of the pan-tilt support unit 1200.
  • Locking protrusions 1310 are provided on the inner circumference of the spin-rotation support unit 1300 at positions corresponding to the locking protrusions 1110 of the middle support unit 1100.
  • the spin gear 1500 has a cylindrical shape.
  • a toothed wheel 1510 is provided on the upper end of the spin gear 1500, and the throat 1520 is provided on the middle portion of the spin gear 1500 to be fitted through the slit into the spin-gear support 1250 of the pan-tilt support unit 1200.
  • the pan worm 1600 has a cylindrical shape.
  • the screw part is provided on the upper portion of the pan worm 1600. Upper and lower portions of the screw part are fitted into the pan-worm fitting parts 740 of the coupling boss 720 of the rotary support unit 700, to which the worm wheel 1210 is fitted.
  • the camera module 1000 is assembled with the lower support unit 900 by tightening fastening means 1030, such as fastening screws or bolts, into locking holes 1010 and 1020 formed in the camera module and the locking holes 920 in the lower support unit.
  • fastening means 1030 such as fastening screws or bolts
  • the spin-rotation support unit 1300, the middle support unit 1100, and the lower support unit 900 are integrally coupled to each other by tightening fastening means 1330, such as screws or bolts, into the locking holes in the corresponding locking protrusions 1310 and 1110 and the locking holes 910, thus providing a first assembly.
  • pan-tilt support unit 1200 and the rear cover 800 are coupled to each other by tightening fastening means 1230, such as screws or bolts, into the corresponding locking protrusions 1220 and the coupling rods 820, thus providing a second assembly.
  • the lower disk 930 of the lower support unit 900 is seated on the seating step 840 of the rear cover 800, thus preventing the lower support unit from undesirably moving downwards.
  • the first assembly is made.
  • the outer diameter of the middle support unit 1100 is larger than the inner diameter of the pan-tilt support unit 1200, thus preventing the first assembly from moving upwards relative to the second assembly, and thereby preventing the first assembly from being removed from the second assembly.
  • the outer diameter of the upper portion of the spin-rotation support unit 1300 is larger than the inner diameter of the pan-tilt support unit 1200, thus preventing the first assembly from moving downwards relative to the second assembly, and thereby preventing the first assembly from being removed from the second assembly.
  • the first and second assemblies are combined with each other in such a way that they spin freely, thus providing an integrated rotary unit.
  • the camera module 1000 is fastened to the lower support unit 900 using fastening means such as screws, and is positioned in the hollow portions of the spin-rotation support unit 1300, the pan-tilt support unit 1200, and the middle support unit 1110.
  • the rotary unit comprising the first and second assemblies, is locked to the rotary support unit 700.
  • FIG. 4 is a perspective view illustrating the assembled state of the support device of FIG. 3 .
  • the spin-rotation or the pan-tilt of the camera module 1000 is as follows.
  • the spin-rotation of the camera module 1000 is performed as follows. As the stepper 1320 is rotated by the spin gear 1500, the spin-rotation support unit 1300 is rotated. Further, the lower support unit 900, which is coupled to the spin-rotation support unit 1300 via the middle support unit 1100, is rotated. Consequently, the camera module 1000, coupled to the lower support unit 900, is spun. That is, the spin gear 1500, the spin-rotation support unit 1300, the middle support unit 1100, and the lower support unit 900 constitute a spin-rotation unit.
  • the pan-tilt of the camera module 1000 is performed as follows. As the worm wheel 1210 is rotated by the pan worm 1600, the pan-tilt support unit 1200, integrated with the worm wheel 1210, is panned around an axis coupling the worm wheel 1210 and the locking wheel 1240, and the lower support unit 900 and the camera module 1000, which are integrally coupled to the pan-tilt support unit 1200, are panned. That is, the pan worm 1600, the pan-tilt support unit 1200, the lower support unit 900, and the middle support unit 1100 constitute a pan-tilt unit.
  • FIG. 5 is a view illustrating the operation of adjusting the spin-rotation of the camera module 1000 using the spin gear 1500.
  • the camera module 1000 can be spun within an angular range of 380 degrees.
  • FIG. 6 is a view illustrating the operation of adjusting the pan-tilt of the camera module using the pan worm.
  • the vertical angle of the camera module 1000 can be regulated within an angular range from 0 degrees to 90 degrees by the rotation of the pan worm 1600.
  • FIG. 7 is an exploded perspective view illustrating a support device for camera modules, according to another embodiment of the present invention.
  • the embodiment shown in FIG. 7 includes, as one element, the support device for camera modules, which is illustrated in FIG. 3 .
  • the support device for camera modules includes a camera-module support unit (the support device for camera modules shown in FIG. 3 ), and an outer casing unit.
  • the outer casing unit includes a base support unit, a base coupling unit, a base-coupling-unit cover, a dome gasket, a dome cover, and a dome insert part.
  • the base support unit 100 has a cylindrical shape, and a semi-circular outer hole 110 is formed in a sidewall of the base support unit 100 so as to support a circular camera-module-control knob 1400.
  • a camera module controller 1700 for controlling the function of the camera module is provided on the camera-module-control knob 1400 at a predetermined position.
  • a protruding part is provided on the bottom of the base support unit 100 so as to secure the support device to a ceiling or wall, with a mounting hole formed in the protruding part. Further, a projecting ring 120 is provided on the inner circumference of the lower portion of the base support unit 100.
  • the base coupling unit 200 has the shape of a cylinder which is closed at the bottom thereof.
  • Base locking holes 210 are formed in the upper surface of the base coupling unit 200 to be coupled to base locking holes 310 in a base-coupling-unit cover 300 using base locking bolts 320.
  • An inner hole 220 is formed at a predetermined position in the sidewall of the base coupling unit 200 so that the camera-module-control knob 1400 of the base support unit 100 is supported in the inner hole 220.
  • a guide groove 270 is provided in the outer circumference of the base coupling unit 200.
  • inner steps 290 are provided on the inner circumference of the base coupling unit 200 so that a flange 540 of the dome insert part 500 and a flange 410 of the dome gasket are seated on the inner steps 290.
  • a protruding-rib fitting groove 280 is formed at a predetermined position in the upper portion of the base coupling unit 200 so that a protruding rib 420 of the dome gasket is fitted into the protruding-rib fitting groove 280.
  • a voltage supply part and a camera control circuit are provided on the bottom of the base coupling unit 200.
  • the dome cover 600 has the shape of a hemisphere which is made of a transparent material, and has a hollow space in the hemisphere.
  • the dome insert part 500 is inserted into the hollow space of the hemisphere, and an annular flange 620 is provided around an opening which is provided in the lower portion of the dome cover 600, with small protuberances 610 formed at predetermined positions on the lower surface of the flange 620.
  • the dome insert part 500 has the shape of a hemisphere which is hollow therein.
  • a cut part 550 is formed in a sidewall of the dome insert part 500 to correspond to the panning area of the camera module, and the annular flange 540 is provided around the lower opening of the dome insert part 500.
  • Notches 530 are formed in the flange 540 so that the protuberances 610 of the dome cover 600 fit into the notches 530.
  • locking holes 510 are formed in the flange 540 at positions corresponding to the locking holes 710 in the rotary support unit 700, so that the dome insert part 500 and the rotary support unit 700 are assembled with each other by tightening fastening means 520, such as screws or bolts, into the locking holes 510 and 710.
  • protuberances 570 are provided at predetermined positions on the bottom of the flange 540, and are inserted into holes 470 in the dome gasket 400. Thereby, the dome gasket and the camera-module support unit are coupled to each other via the dome insert part. Thus, as the dome gasket rotates, the camera-module support unit is also rotated.
  • the dome gasket 400 has the shape of a ring which has a hollow portion, and is made of an elastic material.
  • the annular flange 410 is provided on the lower portion of the dome gasket 400, and an annular locking protrusion 430 is provided at an inner position on the upper portion of the dome gasket 400.
  • the protruding rib 420 (see FIG. 8 ) is provided at a predetermined position on the flange 410, and is fitted into the protruding-rib fitting groove 280 of the base coupling unit 100.
  • lever seats 440-1 and 440-2 are provided at predetermined positions on the dome gasket 400 so that a spin lever and a pan lever are seated into the corresponding lever seats 440-1 and 440-2.
  • a groove 480 is provided in the upper portion of the inner circumference of the dome gasket 400 such that the flange 620 of the dome cover 600 and the flange 540 of the dome insert part 500 are fitted into the groove 480.
  • the holes 470 are formed at predetermined positions in the lower portion of the dome gasket 400 such that the protuberances 570 provided on the lower surface of the flange 540 of the dome insert part 500 are fitted into the holes 470.
  • a circled portion in FIG. 7 is a sectional view showing part of the dome gasket.
  • the base-coupling-unit cover 300 has the shape of a ring which has a hollow portion.
  • the locking holes 310 are formed in the base-coupling-unit cover 300 at positions corresponding to the locking holes 210 of the base coupling unit 200, so that the base-coupling-unit cover 300 is fastened to the base coupling unit 200 by tightening fastening means 320, such as screws or bolts, into the locking holes 310 and 210.
  • Lever insert holes 330-1 and 340-1 are formed at predetermined positions in the base-coupling-unit cover 300 so that the spin lever 330 for spinning the camera module and the pan lever 340 for panning the camera module are respectively inserted into the corresponding lever insert holes 330-1 and 340-1.
  • the base-coupling-unit cover 300 is coupled to the base coupling unit 200 while the inner portion of the base-coupling-unit cover 300 covers the upper portion of the flange 410 of the dome gasket 400, thus preventing the removal of the dome gasket 400.
  • the camera-module-control knob 1400 When the camera-module-control knob 1400 is separated from the base support unit 100, it is possible to adjust the function of the camera module using a circuit attached to the camera-module-control knob 1400 without disassembling the support device for camera modules.
  • FIG. 8 is a bottom perspective view illustrating the assembled state of the support device for camera modules of FIG. 7 , in which only parts other than the base support unit and the base coupling unit are shown in the drawing.
  • FIG. 8 shows the state in which a spin wire 1800 is connected between the spin gear 1500 and the spin lever 330, and a pan wire 1900 is connected between the pan worm 1600 (not shown) and the pan lever 340.
  • Each of the wires 1800 and 1900 is made of a steel material, and is produced by twisting a plurality of strands of steel. Even if the spin lever or the pan lever is rotated so as to spin or pan the camera module, the rotating force of the spin lever or the pan lever is transmitted to the spin gear 1500 or the pan worm 1600 without twisting the wires. Thus, the vertical angle (angle formed by the pan-tilt) or the spin-rotation angle (angle formed by the spin-rotation) of the camera module can be adjusted.
  • FIG. 9 is a top perspective view illustrating the assembled state of the support device for camera modules of FIG. 7 , in which only parts other than the base support unit and the base coupling unit are shown in the drawing. In the drawing, the dome cover 600 is not shown.
  • FIG. 10 is a view illustrating part of the support device for camera modules of FIG. 7 . That is, the drawing illustrates the state in which the base coupling unit 200 is fitted into the base support unit 100, and the camera-module-control knob 1400 passes through the outer hole 110 in the base support unit 100 and the inner hole 220 in the base coupling unit 200 to be installed in the base coupling unit 200.
  • FIG. 11 is a view illustrating the support device for camera modules of FIG. 7 , in which the dome cover is removed from the support device.
  • FIG. 12 is a view illustrating the operation of spinning the camera module using the spin lever when the support device for camera modules of FIG. 7 is assembled.
  • the spin lever 330 When the spin lever 330 is rotated using a screwdriver, the spin wire 1800 is rotated. The rotating force of the spin wire 1800 is transmitted to the spin gear 1500 without twisting the spin wire 1800, so that the spin gear 1500 is rotated.
  • the stepper 1320 engaging with the spin gear 1500, is rotated. Thereby, as described above, the camera module is spun.
  • the maximum spinning angle of the camera module is 380 degrees.
  • the pan lever 340 when the pan lever 340 is rotated, the pan wire 1900 is rotated, and the rotating force of the pan wire 1900 is transmitted to the pan worm 1600, so that the pan worm 1600 is rotated.
  • the camera module is panned.
  • the maximum panning angle of the camera module is 90 degrees.
  • FIG. 13 is a view illustrating the operation of adjusting the horizontal observation angle of the camera module by rotating the base coupling unit of the support device for camera modules.
  • the base support unit 100 in the state where the base support unit 100 is mounted to a wall or ceiling, when the base-coupling-unit cover 300, which is fastened, using screws or the like, to the base coupling unit 200, fitted into the base support unit 100, is rotated, the base coupling unit 100, 5 coupled to the base-coupling-unit cover 300, is rotated, and the dome gasket 400, coupled to the base coupling unit 100, is also rotated.
  • the camera-module support unit coupled to the dome gasket 400 via the dome insert part 500 is rotated in the same direction, so that the horizontal observation angle of the camera module is changed. Thereby, it is possible to adjust the horizontal direction which is to be observed by the camera.

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  • Signal Processing (AREA)
  • Accessories Of Cameras (AREA)
  • Studio Devices (AREA)

Claims (5)

  1. Stützvorrichtung für Kameramodule, dadurch gekennzeichnet, dass die Stützvorrichtung Folgendes umfasst:
    einen Körper mit einem Kameramodul (1000) darin, der eine untere Stützeinheit (900) umfasst, die an das Kameramodul gekoppelt ist und auf einer Sitzstufe (840) sitzt,
    eine mittlere Stützeinheit (1100), die an die untere Stützeinheit (900) gekoppelt ist, und
    eine obere Stützeinheit (1300), die an die mittlere Stützeinheit (1100) gekoppelt ist,
    eine zweite mittlere Stützeinheit (1200), die drehbar an einer Seitenfläche des Körpers angebracht ist, wobei die zweite mittlere Stützeinheit (1200) an einer Außenfläche davon zwei gegenüberliegende Räder (1210, 1240) hat, die in der Kuppelnabe (720, 750) einer Drehstützeinheit (700) anzubringen sind,
    eine hintere Abdeckung (800), die an die zweite mittlere Stützeinheit (1200) gekoppelt ist und die Sitzstufe an einer Innenfläche davon hat, so dass der Körper drehbar darauf sitzt, und
    die Drehstützeinheit (700) mit zwei Kuppelnaben zum Stützen der beiden Räder der zweiten mittleren Stützeinheit (1200),
    wobei die zweite mittlere Stützeinheit (1200) zwischen der oberen Stützeinheit (1300) und der mittleren Stützeinheit (1100) positioniert ist, während sie drehbar an einem unteren Abschnitt der oberen Stützeinheit (1300) gekoppelt ist.
  2. Stützvorrichtung nach Anspruch 1, wobei die obere Stützeinheit (1300) die Form eines Rings hat, der innen einen hohlen Abschnitt hat, wobei an einem Außenumfang eines oberen Abschnitts der oberen Stützeinheit ein gezahnter Schrittschalter vorgesehen ist.
  3. Stützvorrichtung nach Anspruch 1, wobei eines der beiden an der zweiten mittleren Stützeinheit (1200) vorgesehenen Räder ein Schneckenrad (1210) umfasst, das an seinem Außenumfang Zähne hat.
  4. Stützvorrichtung nach Anspruch 2, wobei
    die zweite mittlere Stützeinheit (1200) an ihrer Außenfläche eine Kreiselradstütze (1250) hat, so dass das Kreiselrad (1500) in der Kreiselradstütze (1250) angebracht ist,
    das Kreiselrad (1500) an einem vorbestimmten Abschnitt davon ein Zahnrad (1510) hat,
    das Zahnrad des Kreiselrads und der Schrittschalter ein Kreisel-Stirnrad darstellen, während ein Teil des Kreiselrads in der Kreiselradstütze angebracht ist, und
    die obere Stützeinheit (1300) durch den Schrittschalter (1320) gedreht wird, der gedreht wird, wenn das Kreiselrad (1500) gedreht wird, und die über die mittlere Stützeinheit (1100) an die obere Stützeinheit (1300) gekoppelte untere Stützeinheit (900) gedreht wird, so dass das an die untere Stützeinheit (900) gekoppelte Kameramodul, gedreht wird.
  5. Stützvorrichtung nach Anspruch 3, wobei an einer Seite der Kuppelnabe der Drehstützeinheit ein Schwenk-Schneckenpassteil (740) vorgesehen ist, das das Schneckenrad (1210) stützt, so dass die Schwenk-Schnecke (1600) in dem Schwenk-Schneckenpassteil angebracht ist,
    ein Schneckenteil an einer vorbestimmten Position an der Schwenk-Schnecke (1600) vorgesehen ist,
    der Schneckenteil der Schwenk-Schnecke und das Schneckenrad ein Schneckengetriebe darstellen, während ein Teil der Schwenk-Schnecke in dem Schwenk-Schneckenpassteil (740) angebracht ist, und
    das Schneckenrad durch Drehung der Schwenk-Schnecke in der Kuppelnabe der Drehstützeinheit gedreht wird und die mit dem Schneckenrad integrierte zweite mittlere Stützeinheit geschwenkt wird, so dass die an die zweite mittlere Stützeinheit gekoppelte untere Stützeinheit und das Kameramodul geschwenkt werden.
EP08778379.1A 2008-05-08 2008-06-26 Halteinrichtung für kameramodule Not-in-force EP2281393B1 (de)

Applications Claiming Priority (2)

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KR1020080042850A KR100950733B1 (ko) 2008-05-08 2008-05-08 카메라 모듈용 지지장치
PCT/KR2008/003674 WO2009136679A1 (en) 2008-05-08 2008-06-26 Support device for camera modules

Publications (3)

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EP2281393A1 EP2281393A1 (de) 2011-02-09
EP2281393A4 EP2281393A4 (de) 2011-07-06
EP2281393B1 true EP2281393B1 (de) 2014-08-06

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EP (1) EP2281393B1 (de)
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Also Published As

Publication number Publication date
KR100950733B1 (ko) 2010-04-01
US20110019074A1 (en) 2011-01-27
WO2009136679A1 (en) 2009-11-12
US8379089B2 (en) 2013-02-19
KR20090116998A (ko) 2009-11-12
EP2281393A4 (de) 2011-07-06
EP2281393A1 (de) 2011-02-09

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